Sterlitech 代理


Sterlitech 代理

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上海金畔生物科技有限公司Sterlitech 专业代理,具体产品信息欢迎电询:021-50837765

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世界*实验材料供应商Sterlitech 上海金畔生物为其中国代理,Sterlitech 在一直是行业的*,一直为广大科研客户提供zui为优质的产品和服务,上海金畔生物一直秉承为中国科研客户带来的产品,的服务,Sterlitech 就是为了给广大科研客户带来更加完善的产品和服务,您的满意将是我们zui大的收获

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美国Sterlitech集团建成于2001年,秉承为科学家、企业家和将想法转化为现实的梦想家提供理想优质膜的精神,已成长为横跨膜的常规应使用、创新应用、产品开发集小型规模化处理等膜研发和应用全流程产品供应商,是目前世界上zui大、zui全的无机膜与过滤介质生产公司之一,也是微米和亚微米过滤产品研发和供应的企业。其产品包括纯银金属膜,醋酸纤维素滤膜,陶瓷膜,玻璃纤维滤膜,硝化纤维素滤,尼龙膜,聚碳酸酯径迹蚀刻膜,聚醚砜膜,聚酯膜,聚丙烯滤膜,特氟隆膜,以及HP4750等膜过滤设备,涵盖几乎所有过滤产品。Sterlitech的产品适用于疾病检测和诊断设备的研发和生产、海水淡化和水资源保护、废弃液体中回收高价值资源、提高工人生产环境等领域,其产品被众多著名的化学实验室、生物实验室应用。

Sterlitech主要产品简介

一、滤器产品系列

    Sterlitech拥有zui为齐全、zui高品质的各式滤器,包括滤膜、注射器及囊式过滤器(含一次性无菌滤器)等系列。主要包括以下系列:

1、滤膜产品系列:该系列产品主要包括各式已切割好的不同材质的滤膜产品,包括:银膜、氧化铝膜、醋酸纤维素膜、陶瓷膜、玻纤滤器、尼龙膜、亲水混合纤维素酯膜、聚丙烯晴膜、聚碳酸酯径迹蚀刻膜、聚二醚酮膜、聚酯膜、聚醚砜膜、聚丙烯膜、 PTFE膜、PVDF膜。具体孔径及大小规格请详询代理商:上海金畔生物生物试剂有限责任公司。

2、针头式滤器产品系列:针头式滤器在小规模过滤,尤其是实验室过滤使用中有着广泛应用,Sterlitech在该系列产品中可提供非灭菌及灭菌的各式针头滤器,滤膜材质包括:醋酸纤维素、玻璃纤维、尼龙、聚醚砜、聚丙烯、PTFE及PVDF。

3、纤维素滤纸:定性和定量滤纸在化学分析等研究中应用广泛,Sterlitech在纤维素滤纸产品线可提供常规定性及定量滤纸,以及高档无灰纤维素滤纸(含灰率低于0.1%)。

4、囊式过滤器:囊式滤器主要用于清除液体或溶液、气体中的颗粒和细菌,具有即用、无需组装的特点,Sterlitech推出的一次性囊式过滤器无胶水及表面活性剂,设计优良,预充纯水以减少滤过损失,并通过VI级毒理测试,有非灭菌和无菌两类,滤膜材质包括:玻璃纤维素、尼龙、聚醚砜、聚丙烯。

5、萃取套管:该系列产品包括各种型号的萃取套管,材质包括纤维素和玻璃纤维素。

6、一次性过滤器产品系列:该系列产品包括各式无菌一次性过滤器,主要用于溶液澄清及灭菌使用。

Sterlitech主要产品简介

 

7、超滤柱:该系列产品包括一次性及可重复使用的各式超滤柱,适用于正压下分离及离心分离应用。

8、定制滤器服务:除上述各式滤器外,Sterlitech还针对特殊用途的客户提供滤器定制服务,以满足客户的各种需求。 

二、可换膜过滤器

    Sterlitech提供的真空和压力式过滤器和过滤设备拥有zui大的过滤速度和极小的过滤阻力,过滤器性状和大小、材质组成多种多样,便于研究人员根据实际需要进行选取。

1、真空过滤器:该系列产品除各种形状的滤器外,材质可包括全玻璃、主要部件玻璃、漏斗部玻璃、磁性材料、聚砜、不锈钢等,形式有单管、多管、分段收集式等形式,另外还供应多种形式的过滤瓶和橡胶塞。

 2、压力式过滤器:该系列产品包括各式压力式in-line过滤设备、大型过滤设备、注射器式过滤设备及压力过滤器容器和配件。

Sterlitech主要产品简介 

三、膜及工艺研发产品线

Sterlitech的膜及工艺研发产品线包括各种各样的优质平板膜和陶瓷膜,广泛应用于切流式过滤系统、正/反渗透过滤系统、纳米过滤系统、卷式反渗透过滤等领域,并适用于实验室中小型转化试制应用

四、实验室常用过滤设备

该系列产品包括生化实验室和分析实验室常用的各式过滤设备及其配件,包括各式泵、液体输送和储存系统、灭菌设备、离心设备、电炉、混匀/搅拌设备,以及振摇设备等。

上海金畔生物科技有限公司
400


企业:
:http://www.jinpanbio.com/
上海市浦东新区晨阳路225弄东方现代商业广场46303(近东亭路

Sterlitech 特约代理

HP4750 Stirred Cell
Assembly and Operation Manual

Sterlitech Corporation | HP4750 Assembly and Operation Manual 1
Contents
Introduction ……………………………………………………………………………………………………………….. 2
Before Assembly ………………………………………………………………………………………………………… 2
Stirred Cell Assembly ………………………………………………………………………………………………….. 3
HP4750 Stirred Cell Operating Parameters …………………………………………………………………….. 6
Operation of the HP4750 Stirred Cell …………………………………………………………………………….. 7
HP4750 Example System Configuration ………………………………………………………………………… 9
Accessory and Spare Part Ordering Information ……………………………………………………………..10
O-ring Chemical Compatibility ………………………………………………………………………………………11
Return Material Order Procedure ………………………………………………………………………………….12
Warranty …………………………………………………………………………………………………………………..12
Appendix 1: Swagelok Connections ………………………………………………………………………………13
Appendix 2: Membrane Cutting and Conditioning ……………………………………………………………14
Appendix 3: Preconditioning Membrane Disc Filters ………………………………………………………..15
Appendix 4: HP4750 Bibliography …………………………………………………………………………………16
Appendix 5: List of Sterlitech Flat Sheet Membranes ……………………………………………………….17
2 HP4750 Assembly and Operation Manual | Sterlitech Corporation
Introduction
The HP4750 Stirred Cell is a high-pressure, chemically resistant stirred cell that performs a wide variety of membrane separations. With a maximum pressure rating of 1000 psig (69 bar), the HP4750 Stirred Cell is ideally suited for reverse osmosis (RO) filtration, nanofiltration (NF), ultrafiltration (UF), and microfiltration (MF) separations. Stainless steel (316L) construction and chemically resistant components make the HP4750 Stirred Cell an ideal choice to filter aqueous and non-aqueous solutions.
The Sterlitech HP4750 Stirred Cell is designed and manufactured to provide many years of trouble-free operation. This instruction manual describes the functions, features, configuration, start-up, and operation of the HP4750 Stirred Cell.
Before Assembly
Verify that the stirred cell was shipped complete, intact, and undamaged. The complete set of stirred cell parts is found in Figure 1 below.
1. Stainless steel cell body
2. Cell Top
3. Cell bottom
4. Cell top coupling
5. Cell bottom coupling
6. Porous stainless steel membrane support disk
7. 2 O-rings
8. Top Gasket
9. Permeate Tube
10. Stir bar assembly
11. Stir bar retriever
Figure 1: HP4750 Components
Sterlitech Corporation | HP4750 Assembly and Operation Manual 3
Stirred Cell Assembly
After verifying that all of the necessary components were shipped and present, you can begin the assembly of the stirred cell.
1. Wet the O-rings with a small amount of water or the fluid to be processed.
Note: HP4750 Stirred Cells are shipped with Buna-N O-rings and gaskets by default; other materials such as Viton and PTFE are available as options. Table 2 on page 10 outlines O-ring and gasket material compatibility.
Photo 1: Outer Ring Insertion
2. Insert the O-rings in the bottom of the cell body. (Photo 1 & 2) Check to be certain that the O-rings fit properly in the grooves.
Photo 2: Inner Ring Insertion
3. Place a piece of precut membrane over the center O-ring. The membrane should be installed with the active side toward the cell reservoir. In general, membranes coated on substrate have a shiny, active side and a dull, substrate side. (Photo 3)
Photo 3: Membrane Filter Insertion
4. Place the stainless steel porous membrane support disk on top of the membrane to hold the membrane in place. (Photo 4)
Note: If you cut your own membranes, the stainless steel porous disk can be used as a template. See Appendix 2 on page 14 for more details.
Photo 4: Membrane Support Disk Insertion
4 HP4750 Assembly and Operation Manual | Sterlitech Corporation
5. Fit the cell bottom onto the cell body, aligning the circular groove with the circular ridge on the bottom of the cell body. (Photo 5)
Photo 5: Cell Bottom Assembly
6. Use the 3-inch high pressure coupling to clamp the cell bottom to the cell body. Tighten the high pressure coupling with 16 foot pounds of torque for 1000 psig (69 bar) operation. (Photo 6)
Photo 6: Bottom Clamp Assembly
7. Insert Permeate Tube into side of cell body, tighten using a wrench. (Photo 7)
Note: The HP4750 uses Swagelok connection fittings. More detailed instructions, information and images of the fittings can be found in Appendix 1 on page 13.
Photo 7: Permeate Tube Installation
8. Insert the Stir bar assembly by dropping it into the Cell Body through the 2-inch-diameter opening at the top (Photo 8a). Alternatively, the stir bar assembly can be lowered into the cell with the stir bar retriever (Photo 8b). Figure 2 shows the correct position of the Stir Bar Assembly. After the assembly is in place, pour the solution to be filtered into the Cell Body.
Photo 8a: Stir Bar Insertion
Sterlitech Corporation | HP4750 Assembly and Operation Manual 5
Figure 2: Proper Stir Bar Position
Photo 8b: Stir bar Insertion with stir bar retriever
9. Insert the gasket on the top of the Cell Body, making sure it fits properly in the grooves. (Photo 9)
Photo 9: Gasket Installation
10. Use the 2-inch high pressure coupling to clamp the cell top to the cell body. Tighten the high pressure coupling with 16 foot pounds of torque for 1000 psig (69 bar) operation. (Photo 11) After both clamps are properly attached, the HP4750 Stirred Cell should be centered on top of a magnetic stirrer.
Photo 10: Cell Top Attachment
Photo 11: Cell Top Clamp
6 HP4750 Assembly and Operation Manual | Sterlitech Corporation
HP4750 Stirred Cell Operating Parameters
The HP4750 Stirred Cell is activated by compressed air or inert gas pressure source. Any 47-50 mm diameter membrane disk can be used with the stirred cell, which provides excellent versatility. Before operating the HP4750, please review the operating parameters in Table 1.
Table 1: HP4750 Stirred Cell Operating Parameters
Parameter
Description
Membrane Size:
47-49 mm diameter (1.93 inches)
Active Membrane Area:
14.6 cm2 (2.26 in2)
Processing Volume:
300 mL
Hold-Up Volume:
1 mL
Maximum Pressure:
69 bar (1000 psig)
Maximum Temperature:
121 °C (250 °F) at 55 bars (800 psig)
PH Range:
Membrane dependent
Connections:
Permeate Outlet:
1/8-inch diameter 316L SS tubing
Pressure Inlet:
¼ inch FNPT
Wetted Materials of Construction
Cell Body:
316L Stainless Steel
O-rings:
Buna-N, others available as options
Gaskets:
Buna-N, others available as options
Stir Bar:
PTFE-coated magnet
Dimensions:
Cell Diameter:
5.1 cm (2.0 inches)
Cell Height:
22.4 cm (10.0 inches)
Autoclavable
Yes
Sterlitech Corporation | HP4750 Assembly and Operation Manual 7
Operation of the HP4750 Stirred Cell
1. Attach a high pressure hose (sold separay, Sterlitech Part Number: 1151427) to the fitting on the Cell Top. (Photo 12)
Photo 12: High Pressure Hose Attachment
2. Connect the other end of the hose to the pressure regulator assembly on the inert gas supply or the compressed air supply. The compressed air or inert gas source selected will determine pressure regulator (sold separay, Sterlitech Part Number: 1144026) style and pressure requirements. (Photo 13)
Photo 13: Pressure Regulator Connection
3. Place a Permeate Collection Vessel (user-supplied) under the Permeate Tube. (Photo 14)
Photo 14: Permeate Collection Vessel
4. Turn on the magnetic stirrer (sold separay, Sterlitech Part Number 1144030 or 1144031) to start the motion of the Stir Bar Assembly. (Photo 15)
Photo 15: Magnetic Stirrer
5. Begin filtration by gradually pressurizing the HP4750 Stirred Cell, checking for leaks. Foreign material on the surface of the seals and insufficient tightening of the clamps are most common causes for leakage.
Note: Preconditioning the membranes before use will ensure consistent performance. See Appendix 3 on page 15 for more details.
8 HP4750 Assembly and Operation Manual | Sterlitech Corporation
6. Upon completion of filtration, turn off the pressure source and depressurize the unit by the pressure relief valve (sold separay, Sterlitech Part Number: 1155893). (Photo 16)
Caution: Do not depressurize the HP4750 Stirred Cell by loosening the couplings.
Photo 16: Pressure Relief Valve
7. Once it is depressurized and empty, the HP4750 Stirred Cell can be cleaned with a variety of cleaners, including detergents, solvents, caustic, acid, enzyme cleaners, etc.
Note: Choice of the appropriate cleaning regime should also consider the compatibility of the gasket and O-ring material. A section of O-ring chemical compatibilities is presented on page 11.
Sterlitech Corporation | HP4750 Assembly and Operation Manual 9
HP4750 Example System Configuration
Figure 3 illustrates the typical configuration of a standard HP4750 Stirred Cell System. The drawing shows the three major components of the system: the Cell Body with removable top and bottom, Stir Bar Assembly, and Standard Coupling.
Figure 3: HP4750 Stirred Cell System Schematic
10 HP4750 Assembly and Operation Manual | Sterlitech Corporation
Accessory and Spare Part Ordering Information
Accessories and spare parts for the HP4750 can be ordered by calling Sterlitech Corporation at 1-877-544-4420 or by visiting
Table 2: Accessory and Spare Part Ordering Information
Product
Shipping Weight kg (lb)
Ordering Number
HP4750 Stirred Cell, for operation to 69 bar (1000 psig)
3.8 (8)
HP4750
Accessories
Pressure Regulator Assembly, 6.9-69 bar (100-1000 psig)
2.3 (5)
1144026
Pressure Relief Valve, 69 bar (1000 psig)
0.1 (0.25)
1155893
High Pressure Hose, 183 cm (72 inch)
0.7 (1.5)
1151427
PTFE O-ring/Gasket Kit
0.5 (0.1)
1144028
Viton O-ring/Gasket Kit
0.5 (0.1)
1144029
PTFE Encapsulated Viton O-ring/Gasket Kit
0.5 (0.1)
1144027
Buna O-ring/Gasket Kit
0.5 (0.1)
1144034
EPDM O-ring Gasket Kit
0.5 (0.1)
1144036
Magnetic Stirring Plate
115 VAC 60 Hz
2.3 (5)
1144030
230 VAC 50 Hz
2.3 (5)
1144031
Spare Parts
Cell Top
0.1 (0.25)
1143891
Cell Body
1.4 (3)
1149782
Cell Bottom
1.4 (3)
1143073
Porous Support Disk
0.1 (0.25)
1114910
Stir Bar Assembly
0.1 (0.25)
1143109
Membrane Packs
Visit  for membrane ordering information.
Sterlitech Corporation | HP4750 Assembly and Operation Manual 11
O-ring Chemical Compatibility
The following O-ring and gasket compatibility chart (Table 4) is provided as an aid in selecting a specific synthetic rubber compound for a particular application situation. Operating conditions and environment must also be considered in determining the media suitability.
For recommendations regarding fluids not listed, consult Sterlitech. The recommendations represent compatibility of materials only and do not necessarily constitute a recommendation for use in a specific application.
Table 3: O-ring Chemical Compatibility Chart
Code
Compound
Temperature Range
BN
Buna-N
-40 to 120 °C (-40 to 250 °F)
EP
Ethylene-Propylene
-50 to 150 °C (-65 to 300 °F)
V
Viton
-30 to 205 °C (-20 to 400 °F)
Media (Liquid or Gas)
Code
Media (Liquid or Gas)
Code
Acetic Acid, Glacial
EP
Glycols
EP
Acetone
EP
Grease and Oils
BN
Aluminum Salts
BN
Hydrazine
EP
Ammonium Hydroxide
EP
Hydrochloric Acid
EP
Ammonium Salts
BN
Hydrofluoric Acid
EP
Amyl Alcohol
EP
Hydrogen Peroxide
V
Aniline Dyes
EP
Kerosene
BN
Aromatic Fuel – 50%
V
Linseed Oil
BN
Benzene
V
Methyl Ethyl Ketone
EP
Bleach Liquor
EP
Mineral Oils
BN
Butanol (Butyl Alcohol)
BN
Naphthas
V
Butyl Cellosolve
EP
N-Hexane
BN
Carbon Disulfide
V
Octyl Alcohol
EP
Carbon Tetrachloride
V
Organic Ester
EP
Cellosolve
EP
Peanut Oil
BN
Chlorinated Solvents
V
Phenol
V
Crude Oil
V
Pyridine Oil
EP
Cutting Oil
V
Sewage
BN
Decane
BN
Sodium Acetate
EP
Denatured Alcohol
BN
Sodium Chloride
BN
Detergent, Water Solution
BN
Stoddard Solvent
BN
Diesel Oil
BN
Sulfuric Acid
V
Diethylene Glycol
EP
Tannic Acid
BN
Dry Cleaning Fluids
V
Tertiary Butyl Alcohol
V
Ethyl Alcohol
BN
Titanium Tetrachloride
V
Ethyl Hexanol
BN
Transmission Fluid
BN
Ethylene Glycol
EP
Trioctyle Phosphate
EP
Fatty Acids
V
Varnish
V
Fatty Oil
BN
Water (Demineralized)
BN
12 HP4750 Assembly and Operation Manual | Sterlitech Corporation
Return Material Order Procedure
If materials are to be returned to Sterlitech for repair, evaluation, or warranty consideration, a Return Material Authorization (RMA) number must be obtained from Sterlitech prior to the return. Contact Sterlitech’s Customer Service Department for these forms.
Be sure to include a complete, detailed written reason for the return. Also, include serial numbers, installation and removal dates, and any other pertinent information that is available. HP4750 Stirred Cells have a serial number imprinted on the cell body.
Indicate the proposed disposition of the material, and reference the RMA number on all packages or cartons. All material must be shipped to Sterlitech with freight prepared by the customer.
Warranty
The following is made in lieu of all other warranties expressed or implied. Sterlitech Corporation guarantees equipment to be free from defects in material and workmanship when operated in accordance with written instructions for a period of one year from receipt. Parts not manufactured by Sterlitech are covered by their manufacturer’s warranties, which are normally for one year.
Manufacturers and Seller’s only obligation shall be to issue credit against the purchase or replacement of equipment proved to be defective in material or workmanship. Neither manufacturer nor seller shall be liable for any injury, loss or damage, direct or indirect, special or consequential, arising out of the use of, misuse, or the inability to use such product.
The information contained herein is based on technical data and tests, which we believe to be reliable, and is intended for use by persons having technical skill at their discretion and risk. Since conditions of use are outside Sterlitech’s control, we can assume no liability whatsoever for results obtained or damages incurred through the application of the data presented.
This information is not intended as a license to operate under, or a recommendation to infringe upon, any patent of Sterlitech or others covering any material or use.
The foregoing may not be altered except by a written agreement signed by officers of the manufacturer.
Technical Assistance:
Please contact us if you have any questions or technical inquires about our products.
Sterlitech Corporation | HP4750 Assembly and Operation Manual 13
Appendix 1: Swagelok Connections
To install Swagelok Tube Fittings:
1. Insert the tubing into the Swagelok tube fitting. Make sure that the tubing rests firmly on the shoulder of the fitting and that the nut is finger-tight.
2. Scribe the nut at the 6 o’clock position. By scribing the nut at the 6 o’clock position as it appears to you, there will be no doubt as to the starting position.
3. Hold the fitting body steady with a backup wrench and tighten the nut 1¼ turns. Watch the scribe mark, make one complete revolution and continue to the 9 o’clock position. When the nut is tightened to the 9 o’clock, you can easily see the fitting has been tightened properly.
Swagelok connections can be disconnected and retightened many times.
To retighten the Swagelok connection:
1. Start with the disconnected fitting.
2. Insert tubing with preswaged ferrules into fitting body until front ferrule seats.
3. Tighten the nut by hand. Rotate nut to the original position with a wrench. An increase in resistance will be encountered at the original position. Then tighten slightly with the wrench.
14 HP4750 Assembly and Operation Manual | Sterlitech Corporation
Appendix 2: Membrane Cutting and Conditioning
Sterlitech offers a wide variety membranes that have been pre-cut for use with the HP4750. However, if you need cut your own membrane for use with the HP4750 Stirred Cell, You will need the following items:
? The porous stainless steel support disk, which will serve as the template
? The membrane sheet to be cut
? A pair of sharp scissors
? A pair of latex gloves
To cut a membrane disk filter for the HP4750:
1. Take the porous stainless support disk and place the membrane sheet against it. Be sure to have the latex gloves on to avoid contaminating the membrane surface.
Photo 17: Membrane Cutting
2. Cut along the edge of the template with the scissors. Hold the scissors at an angle towards the center of the template to avoid under-trimming.
Once finished, the membrane should sit perfectly flat on supports without any bending and extend outside of the inner O-ring to avoid leakage.
Photo 18: Membrane Fitting
Sterlitech Corporation | HP4750 Assembly and Operation Manual 15
Appendix 3: Preconditioning Membrane Disc Filters
Once the membrane is cut and fitted, it needs to be pre-conditioned. Membranes that are not pre-conditioned may have different behaviors and fluxes, which will give inconsistent results. Figure 4 below illustrates the instability of the flux, particularly at the start of the trial, through unconditioned membranes.
Figure 4: Example of Performance Variance Using Unconditioned Membranes
To precondition the membrane:
1. Load the membrane into the HP4750 Stirred Cell
2. Fill the stirred cell with deionized water and pressurize the cell. The temperature of the water and the pressure used should be exactly the same as the temperature and pressure that will be used in the actual trials.
3. Run the deionized water through the cell for two hours. After about 30 minutes, flux through the membrane will stabilize after a sharp fall. Over the next 90 minutes, the flux should be steady, indicating that the membrane is conditioned (see Figure 5 below).
Figure 5: Stabilizing Flux with Preconditioning
4. Release pressure, discard the deionized water and fill the cell with your sample.
16 HP4750 Assembly and Operation Manual | Sterlitech Corporation
Appendix 4: HP4750 Bibliography
The following studies utilized the HP4750 Stirred Cell in their method and are listed here to illustrate the potential applications for the HP4750. These studies are good references for understanding the operation of the HP4750 Stirred Cell.
Title
Abstract
Full Citation
Modeling of the retention of atrazine and dimethoate with nanofiltration
The HP4750 stirred cell was used to test which nanofiltration membrane (NF90, NF200, NF270, and DK) worked best at removing pesticides from water.
A.L. Ahmad, L.S. Tan, S.R. Abd. Shukor. Modeling of the retention of atrazine and dimethoate with nanofiltration. Chemical Engineering Journal, Volume 147, Issues 2–3, 15 April 2009, Pages 280–286.
Effects of palm oil-based fatty acids on fouling of ultrafiltration membranes during the clarification of glycerin-rich solution
In this study, the HP4750 cell was used to examine the membrane-binding properties fatty acids with polyethersulfone (PES) and polyvinylidenefluoride (PVDF) ultrafiltration membranes.
Indok Nurul Hasyimah Mohd Amin, Abdul Wahab Mohammad, Mastura Markom, Leo Choe Peng. Effects of palm oil-based fatty acids on fouling of ultrafiltration membranes during the clarification of glycerin-rich solution. Journal of Food Engineering, Volume 101, Issue 3, December 2010, Pages 264–272.
Preparation and characterization of a neutrally charged antifouling nanofiltration membrane by coating a layer of sulfonated poly(ether ether ketone) on a positively charged nanofiltration membrane
The HP4750 stirred cell was used to test the antifouling and separation capability of a specially prepared, electrically neutral nanofiltration membrane.
Chaoyi Ba, James Economy. Preparation and characterization of a neutrally charged antifouling nanofiltration membrane by coating a layer of sulfonated poly (ether ether ketone) on a positively charged nanofiltration membrane. Journal of Membrane Science, Volume 362, Issues 1–2, 15 October 2010, Pages 192–201.
Synthesis and characterization of a carbon nanotube/polymer nanocomposite membrane for water treatment
The HP4750 was used to characterize the separation properties of carbon composite membrane at 2.9, 3.9 and 4.9 MPa.
Hosam A. Shawky, So-Ryong Chae, Shihong Lin, Mark R. Wiesner. Synthesis and characterization of a carbon nanotube/polymer nanocomposite membrane for water treatment. Desalination, Volume 272, Issues 1–3, 3 May 2011, Pages 46–50.
Sterlitech Corporation | HP4750 Assembly and Operation Manual 17
Appendix 5: List of Sterlitech Flat Sheet Membranes
Reverse Osmosis (RO) Membranes*
Designation
(P/N)
Brand
Polymer
Molecular Weight Cut-off (MWCO)
Rej-Size (NaCl)
25C pH Range
Typical
Flux/psi
GFD@
PSI
AD
GE Osmonics
Polyamide
0 MWCO
99.5
1-11
15/800
(YMADSP1905)
AG
GE Osmonics
Polyamide
0 MWCO
99.5
1-11
26/225
(YMAGSP1905)
AK
GE Osmonics
Polyamide
0 MWCO
99
1-11
26/115
(YMAGSP1905)
CE
GE Osmonics
Cellulose Acetate
0 MWCO
97
1-11
23.5/420
(YMCE1905)
SE
GE Osmonics
TF (Thin Film)
0 MWCO
98.9
1-11
22/425
(YMSESP1905)
SG
GE Osmonics
TF (Thin Film)
0 MWCO
98.2
1-11
22/225
(YMSGSP1905)
ACM1
TriSep
Polyamide
0 MWCO
99.5
2-11
25/225
(YMACM11905)
ACM2
TriSep
Polyamide
0 MWCO
99.5
2-11
30/225
(YMACM21905)
ACM3
TriSep
Polyamide
0 MWCO
99.3
2-11
35/225
(YMACM31905)
ACM4
TriSep
Polyamide
0 MWCO
99.2
2-11
30/150
(YMACM41905)
ACM5
TriSep
Polyamide
0 MWCO
98.5
2-11
30/110
(YMACM51905)
SB50
TriSep
Cellulose Acetate Blend
0 MWCO
95.0
4-7
30/420
(YMSB501905)
(99.0 – MgSO4)
X201
TriSep
Polyamide-urea
0 MWCO
99.5
2-11
30/225
(YMX2011905)
70B
Toray
Polyamide
0 MWCO
99.7
2-11
27/225
(YM70BSP195)
70UB
Toray
Polyamide
0 MWCO
99.5
2-11
27/110
(YM70UBSP195)
80E
Toray
Polyamide
0 MWCO
99.8
2-11
16/800
(YM80ESP195)
80LB
Toray
Polyamide
0 MWCO
99.7
2-11
22/800
(YM80LBSP195)
SW30HR
Dow
Polyamide
~100 MWCO
99.6
2-11
17-24/800
(YMSW30HR1905)
18 HP4750 Assembly and Operation Manual | Sterlitech Corporation
SW30XLE
Dow
Polyamide
~100 MWCO
99.5
2-11
23-29/800
(YMSW30XLE1905)
BW30
Dow
Polyamide
~100 MWCO
99.5
2-11
26/255
(YMBW301905)
BW30LE
Dow
Polyamide
~100 MWCO
99.5
2-11
37-46/225
(YMBW30LE1905)
BW30FR
Dow
Polyamide
~100 MWCO
99.5
2-11
26/255
(YMBW30FR1905)
XLE
Dow
Polyamide
~100 MWCO
98.7
2-11
33-41/125
(YMXLE1905)
Nanofiltration (NF) Membranes*
Designation
(SKU)
Brand
Polymer
Molecular Weight Cut-off (MWCO)
Rej-Size (NaCl)
25C pH Range
Typical
Flux/psi
GFD@
PSI
CK
GE Osmonics
Cellulose Acetate
2000 MWCO
92% -Na2SO4
2-8
28/220
(YMCKSP1905)
DK
GE Osmonics
TF (Thin Film)
150-300 MWCO
98% -MgSO4
2-10
22/100
(YMDKSP1905)
DL
GE Osmonics
TF (Thin Film)
150-300 MWCO
96% -MgSO4
2-10
31/100
(YMDLSP1905)
HL
GE Osmonics
TF (Thin Film)
150-300 MWCO
95% -MgSO4
3-9
39/100
(YMHLSP1905)
TS40
TriSep
Polypiperazine amide
200 MWCO
40-60%
2-11
20/110
(YMTS401905)
(99.0%- MgSO4)
TS82
TriSep
Polyamide
150 MWCO
80-90%
2-11
20/110
(YMTS821905)
(99.0% MgSO4)
SB90
TriSep
Cellulose acetate blend
150 MWCO
85.00%
30/225
(YMSB901905)
(97.0% MgSO4)
XN45
TriSep
Polypiperazine amide
500 MWCO
30-Oct
2-11
35/110
(YMXN451905)
(95.0 – MgSO4)
NF
Dow
Polyamide
~200-400 MWCO
99-MgSO4
2-11
26.5-39.5/130
(YMNF1905)
NF245
Dow
Polyamide
~200-400 MWCO
99-MgSO4
2-11
52-72/130
(YMNF2451905)
NF270
Dow
Polyamide
~200-400 MWCO
99.2-MgSO4
2-11
72-98/130
(YMNF2701905)
NF90
Dow
Polyamide
~200-400 MWCO
2-11
46-60/125
(YMNF901905)
NFX
(YMNFX1905)
Synder
Polyamide TFC
150-300 MWCO
40%
3-10.5
20-25/110
99% MgSO4
NFW
(YMNFW1905)
Synder
Polyamide TFC
300-500 MWCO
20%
4-10
45-50/110
97% MgSO4
Sterlitech Corporation | HP4750 Assembly and Operation Manual 19
NFG
(YMNFG1905)
Synder
Polyamide TFC
0.2 micron
10%
4-10
55-60/110
50% MgSO4
Ultrafiltration (UF) Membranes*
Designation
(SKU)
Brand
Polymer
Molecular Weight Cut-off (MWCO)
Rej-Size
25C pH Range
Typical
Flux/psi
GFD@ PSI
CQ
GE Osmonics
Cellulose Acetate
20000 MWCO
20 K
2-9
300/50
(YMCQSP1905)
GE
GE Osmonics
TF (Thin Film)
1000 MWCO
1K-PEG
1-11
20/400
(YMGESP1905)
GH
GE Osmonics
TF (Thin Film)
2000 MWCO
2K-PEG
1-11
20/150
(YMGHSP1905)
GK
GE Osmonics
TF (Thin Film)
3000 MWCO
3K-PEG
1-11
17/75
(YMGKSP1905)
PT
GE Osmonics
PES
5000 MWCO
5K-Dextran
1-11
90/50
(YMPTSP1905)
PW
GE Osmonics
PES
10000 MWCO
10K-Dextran
1-11
85/30
(YMPWSP1905)
MW
GE Osmonics
Ultrafilic
100000 MWCO
50K-Protein
2-9
176/20
(YMMWSP1905)
UA60
TriSep
Polypiperazine amide
3500 MWCO
70.0%- MgSO4
2-11
35/110
(YMUA601905)
UE10
TriSep
PES
10000 MWCO
2-11
50/20
(YMUE101905)
UE50
TriSep
PES
100000 MWCO
2-11
100/20
(YMUE501905)
XT
(YMXT1905)
Synder
PES
1000 MWCO
1000 Da
1-11
75 -80/50
VT
(YMVT1905)
Synder
PES
3000 MWCO
3000 Da
1-11
110-127/50
MT
(YMMT1905)
Synder
PES
5000 MWCO
5000 Da
1-11
120-147/50
ST
(YMST1905)
Synder
PES
10000 MWCO
10000 Da
1-11
130-167/50
MK
(YMMK1905)
Synder
PES
30000 MWCO
30000 Da
1-11
181-193/50
V3
(YMV31905)
Synder
PVDF w/ + surface charge
30000 MWCO
30000 Da
1-11
192-207/50
BN
(YMBN1905)
Synder
PVDF
50000 MWCO
50000 Da
1-11
200-214/50
V4
(YMV41905)
Synder
PVDF w/ + surface charge
70000 MWCO
70000 Da
1-11
157-168/50
20 HP4750 Assembly and Operation Manual | Sterlitech Corporation
LY
(YMLY1905)
Synder
PES
100000 MWCO
100000 Da
1-11
270-289/50
BY
(YMBY1905)
Synder
PVDF
100000 MWCO
100000 Da
1-11
162-173/30
V5
(YMV51905)
Synder
PVDF w/ + surface charge
200000 MWCO
200000 Da
1-11
175-186/30
BX
(YMBX1905)
Synder
PVDF
250000 MWCO
250000 Da
1-11
181-193/30
LX
(YMLX1905)
Synder
PES
300000 MWCO
300000 Da
1-11
236-252/30
V6
(YMV61905)
Synder
PVDF w/ + surface charge
500000 MWCO
500000 Da
1-11
182-196/30
A6
(YMA61905)
Synder
PVDF
500000 MWCO
500000 Da
1-11
191-214/30
V7
(YMV71905)
Synder
PVDF w/ + surface charge
800000 MWCO
800000 Da
1-11
208-232/30
Microfiltration (MF) Membranes*
Designation
(SKU)
Brand
Polymer
Pore Size
Rej-Size
25C pH Range
Typical
Flux/psi
GFD@
PSI
JX
GE Osmonics
PVDF
0.3 micron
0.3 micron
1-11
130/30
(YMJXSP1905)
TM10
TriSep
PVDF
0.2 micron
2-11
50/10
(YMTM101905)
FR
(YMFR1905)
Synder
PVDF
800000 MWCO
800000 dalton
1-11
233-249/30
V0.1
(YMV011905)
Synder
PVDF
0.1 micron
1-11
237-254/20
V0.2
(YMV021905)
Synder
PVDF
0.2 micron
1-11
245-280/20
*This list is updated frequently. Visit  to see the latest offerings.
Founded in 2001 in Kent, WA, Sterlitech Corporation manufactures and markets filtration-focused laboratory products to a broad spectrum of scientific and industrial sectors. Its line of flat sheet membranes and tangential flow cells deliver industry-leading performance and reliable results. Configured for reverse osmosis, nanofiltration, ultrafiltration, and microfiltration applications, Sterlitech’s bench scale test equipment provides the versatility required to innovate.
Sterlitech’s comprehensive line of products is supported by the expertise of its technical specialists who can assist with application-specific product selection, and provide customized solutions where necessary. Unique problem-solving approaches, flexibility, and consistent quality have made Sterlitech Corporation a renowned global provider of filtration products and equipment.
General Corporate Information
Sterlitech Corporation
22027 70th Avenue S
Kent, WA 98032-1911 USA
877-544-4420 or 1-253-437-0844
1-253-437-0845
Sales Inquiries
Accounts Payable
Accounts Receivable
Press Inquiries
For more information call (253) 437-0844, (877) 544-4420, or visit
Sterlitech Corporation
22027 70th Ave. S
Kent, WA 98032-1911 USA
Phone: (253) 437-0844
(253) 437-0845

sterlitech搅拌池常见问题解答

sterlitech搅拌池常见问题解答

 

问:我的膜样品太大而无法放入我的搅拌池中。我可以剪成合适的吗?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

是的,您可以切割膜以适合您的搅拌池。您可以使用来自搅拌池的支撑盘作为模板。  

问:您推荐哪种类型的搅拌板与搅拌池一起使用?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

任何传统的磁力搅拌板都可以使用。Sterlitech 推荐Scilogex MS7-H550-Pro大型 7 英寸方形陶瓷底座为搅拌单元提供了良好的基础,而数字显示屏确保了对搅拌功能的精确可重复控制。

 

问:我可以在搅拌池中使用氧化铝 (AO) 膜盘式过滤器吗?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

是的,您可以在搅拌池中使用AO 膜盘式过滤器。这些盘式过滤器非常易碎,必须小心处理以避免破损。膜镊子  小心地将盘式过滤器放在支撑盘表面,然后将支撑盘安装在搅拌池体内。

 

 

问:我可以在搅拌池中使用微滤膜盘式过滤器吗?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

是的,您几乎可以在搅拌池中使用所有微滤膜盘式过滤器 。是陶瓷膜盘式过滤器;这些太厚了,无法放入搅拌的细胞中。

 

问:我需要对搅拌池中使用的膜盘进行预处理吗?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

是的,对于将与水或水溶液一起使用的平板膜,我们建议您在进行分离实验之前对膜进行预处理。预处理有助于确保膜按预期运行。此外,预处理可去除膜上的防腐剂和其他残留物。

要对膜盘进行预处理,请将其安装在搅拌池中,然后用纯化的去离子水填充搅拌池。在分离实验预期的压力和温度下启动搅拌池的操作。让电池运行,直到渗透通量稳定在预期值。然后释放压力,丢弃任何残留在搅拌池中的水,并从渗透收集容器中丢弃水。您现在可以通过用所需的进料样本重新填充单元来继续您的实验。任何时候都不应让湿润的膜盘变干。  

 

 

 

 

 

 

 

问:为什么我在使用搅拌池时没有达到膜制造商公布的截留率和/或渗透通量?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

重要的是要注意,膜制造商的截留率和渗透通量规格通常基于使用标准化进料流和压力以错流模式运行的大面积螺旋缠绕膜元件的测试。对于与标准测试条件不相似的进料流和压力,排斥和渗透通量会有所不同,这是正常的,也是可以预料的。这也是正常的,并且可以预料,对于膜活性区域比螺旋缠绕元件小得多的设备(例如搅拌电池)的已发布规格,排斥和渗透通量将具有更大的可变性。搅拌细胞进料中的一定浓度的积累是不可避免的,这可能会影响排斥和渗透通量。

在使用搅拌池时,有一些策略可用于优化排斥和渗透流。首先,应使用纯化的去离子水对膜进行预处理。有关预处理程序,请参阅操作手册。其次,确保搅拌棒以适当的速度正确转动。第三,操作压力应与膜制造商的推荐压力相对应。最后,您可能希望在搅拌池中仍有一些进料液残留时停止实验,以减轻与浓度增加相关的影响。

 

 

 

 

 

 

 

 

 

 

问:我可以将搅拌池渗透线直接连接到 HPLC 分析仪或其他实验室仪器吗?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

是的,您可以将渗透线直接连接到仪器上。然而,重要的是要了解,如果膜失效或被允许干燥,则可以将全部进料压力施加到渗透线。如果仪器不能承受进水压力,则不建议直接连接渗透线。或者,如果膜过早结垢(由于高 TDS 或颗粒负载),渗透物水平可能会下降到 HPLC 入口处的检测值以下。

 

 

 

问:搅拌池的最大膜厚是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

搅拌池设计用于接受厚度为 350 微米或更小的平板膜。

问:HP4750X 搅拌池的最高工作温度是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池本身的最高工作温度为 400°F (205°C),≤2000psi (138bar)。然而,实际的最高工作温度可能会受到密封弹性体或所使用的膜的限制

 

问:我需要更换 HP4750X 搅拌池上的世伟洛克压缩接头。端口的螺纹尺寸是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池顶部的压力端口有 1/4″ NPT 内螺纹。如果使用机械搅拌器,轴适配器中的压力端口有 1/8″ NPT 内螺纹。

HP4750X 搅拌池主体中的渗透端口有 1/8″ NPT 内螺纹。

 

 

 

 

问:为什么要选择哈氏合金 HP4750X 搅拌池?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

氏合金 HP4750X 搅拌池用于对 316L 不锈钢具有腐蚀性的进料溶液,例如高盐度海水、酸和具有非常高 TDS 的类似溶液。 

 

 

问:为什么我使用的平板膜测量通量值小于公布的通量值?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

螺旋元件和平板膜的流动特性明显不同,实际上只能在定性基础上进行比较。在工厂、实验室或其他地方使用的膜制造过程中的可变性、水成分、测试程序和测试设备的差异都会影响水通量结果。

问:HP4750 搅拌池的正确膜盘直径是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750 搅拌池将接受直径为 47 毫米至 49 毫米的膜盘。

问:HP4750X 搅拌池和 HP4750 搅拌池有什么区别?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池设计用于在比 HP4750 搅拌池更高的压力(高达 2500psi)和更高的温度(高达 400F)下运行。HP4750X 电池的顶盖和底盖通过高强度螺栓固定,标准 HP4750 使用夹具组件固定盖。此外,HP4750X 的标准密封弹性体是 Viton。

 

 

 

问:HP4750X 搅拌池的结构材料是什么?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池体由 316 不锈钢制成,但也可用于高腐蚀性环境的 Hastelloy C-276。磁力搅拌棒涂有 PTFE 涂层,以防止腐蚀并确保广泛的化学相容性。标准密封件由氟橡胶组成;其他密封弹性体是可选的。

 

问:HP4750X 搅拌池的最大工作压力是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池在室温下的最大工作压力为 2500psi (172bar)。然而,实际的最大工作压力可能会受到所使用的膜的限制。

问:错流测试池和 Sterlitech HP4750 搅拌池有什么区别?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Sepa CF、CF042 和 CF016 测试池在真正的错流模式下运行,并具有浓缩液和渗透液流。根据系统设计和所处理的流体,它们在用户选择的压力和流量参数下运行,并允许连续测试和取样。HP4750 搅拌池是一个封闭的批处理系统,最大进料量为 300mL,通常加压压缩气体。搅拌池在正常流动模式下运行,没有浓缩流。搅拌棒作用用于模拟膜表面附近的横流。

 

 

 

 

问:HP4750X 搅拌池的正确膜盘直径是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

HP4750X 搅拌池将接受直径为 47 毫米至 49 毫米的膜盘

问:为什么我要为 HP4750X 搅拌池使用机械搅拌器?

 

 

 

 

 

 

 

 

 

 

 

机械搅拌器 通常用于处理会使磁力搅拌棒停止工作的高粘度流体    

问:我注意到平板膜的尺寸描述为 CF016、CF042 和 Sepa CF。这些尺寸是多少?

 

 

 

 

 

 

 

 

 

 

 

 

 这些膜尺寸旨在用于 Sterlitech 提供的工作台规模交叉流测试池。请查看我们提供的平板膜数量及其尺寸:

  • HP4750 搅拌池: 47 毫米 (1.85″) 圆盘

  • CF016电池: 58 x 75mm (2.26 x 2.95″) 优惠券

  • CF042电池: 56 x 115 mm (2.20 x 4.53″) 优惠券

  • Sepa CF 电池: 140 x 190 mm (5.51 x 7.48″) 优惠券

  • CF047圆形电池: 47mm 碟片

  • CF090圆形电池: 90 毫米圆盘

 

sterlitech 1144027说明书

sterlitech 1144027说明书

O 形圈/垫圈套件,PTFE 封装氟橡胶,HP4750

1144027

细节

 

O 形圈/垫圈套件,PTFE 封装氟橡胶,HP4750


应用

*的设计: 池的顶部可以很容易地移除,以将最多 300 mL 的溶液填充到容器中。底部可拆卸,便于更换膜。该设计可实现 1mL 的低滞留量,以防止浪费宝贵的溶液。

高压操作: HP4750X 搅拌池可以完成从微滤到反渗透的各种分离。标准电池设计用于在 172 bar (2500 psig) 下安全运行。

惰性气体压力源:标准压缩空气或惰性气体源允许提供可变、安全和一致的压力来执行分离。由于 HP4750X 搅拌池不需要泵来提供工作压力,因此可以安全地处理挥发性溶液。压力调节器和安全阀可从 Sterlitech 获得。

机械搅拌机构: Sterlitech 可以提供可选的机械搅拌器,用于 HP4750X。

接受标准膜盘:   HP4750 搅拌池可容纳任何 47-50 毫米直径的膜盘。为方便起见,Sterlitech 提供单一类型或分类包装的预切膜和包装膜,有多种 RO、NF、UF 和 MF 膜可供选择。

可高压灭菌:所有组件均*可高压灭菌和消毒。

 

HP4750比较:


 


    hHP4750

      HP4750X

      HP4750X 哈氏合金™
膜尺寸 直径 1.93 标称 (49 毫米) 直径 1.93 标称 (49 毫米) 直径 1.93 标称 (49 毫米)
活性膜面积 2.26 英寸2 (14.6 厘米2 ) 2.26 英寸2 (14.6 厘米2 ) 2.26 英寸2 (14.6 厘米2 )
处理量 高达 300 毫升 高达 300 毫升 高达 300 毫升
滞留量 1毫升 1毫升 1毫升

最大压力
1000 psig (69 bar) 带高压夹具 2500 磅/平方英寸(172 巴) 2500 磅/平方英寸(172 巴)

最高温度
250 °F (121 °C) 在 800 psig (55 bar) 2000 psig (138 bar) 时 400 °F (205 °C) 2000 psig (138 bar) 时 400 °F (205 °C)
pH范围 膜依赖 膜依赖 膜依赖
连接 渗透出口:⅛ in dia. 316L 不锈钢管;
压力入口: ¼ in FNPT
渗透出口:⅛ in dia. 316L 不锈钢管;
压力入口: ¼ in FNPT
渗透出口:Hastelloy™ (C-276);
压力入口: ¼ in FNPT

细胞体
316L不锈钢 316L不锈钢 哈氏合金™ (C-276)

O形圈
Buna-N,其他可选 氟橡胶或聚四氟乙烯 氟橡胶或聚四氟乙烯

垫片
Buna-N,其他可选 氟橡胶或聚四氟乙烯 氟橡胶或聚四氟乙烯

搅拌棒
聚四氟乙烯 聚四氟乙烯 聚四氟乙烯/哈氏合金组件

细胞直径
2.0 英寸(5.1 厘米) 2.75 英寸(7.0 厘米) 2.75 英寸(7.0 厘米)

单元格高度
7.8 英寸(19.9 厘米) 10 英寸(22.4 厘米) 10 英寸(22.4 厘米)

单元格宽度
5.7 英寸(14.6 厘米)带高压接头 不适用 不适用

 

 

Sterlitech 1121841说明书

 

 Sterlitech 1121841说明书

PTFE Flat Sheet Membrane, Laminated, 0.1 Micron, Sepa, 5/Pk

SKU

1121841

Pore Size (µm)

0.1

Designation

QL217

Polymer

PTFE

Size

Sepa

Pack Size

5

层压PTFE平板膜,0.1微米,隔膜,5 /包

应用范围:

  • 海和微咸水淡化
  • 工艺水处理
  • 废水处理
  • 从水乳液中分离净水和油

我们强烈建议使用隔膜垫片,以更好地支撑隔膜并帮助其抵抗弯曲和撕裂。

每种电池尺寸的垫片的详细列表可在此处找到(CF016尺寸–CF042尺寸–隔膜尺寸)

MD平板比较:

聚合物 聚四氟乙烯 聚四氟乙烯 聚四氟乙烯 聚四氟乙烯 聚四氟乙烯 聚丙烯 聚丙烯 聚偏氟乙烯 窥视
毛孔大小 0.45微米 0.2微米 0.1微米 0.45微米 0.2微米 0.2微米 0.1微米 0.1微米 0.1微米
支撑材料 层压PP网 层压PP网 层压,PP无纺布 不适用 不适用 不适用 不适用 不适用 不适用
pH值 1-14 1-14 1-14 没有限制 没有限制 1-14 1-14 1-12 1-14
厚度 64-127微米 76-152微米 152-254微米 21-51微米 21-51微米 155-185 85-115 50微米 50微米
进水压力 > 0.76巴(11psi) > 2.5巴(37磅/平方英寸) > 4.1巴(60磅/平方英寸) > 93.1巴(45磅/平方英寸) > 5.5巴(80磅/平方英寸) > 2.76巴(40磅/平方英寸) > 5.65巴(82psi) > 3bar(43磅/平方英寸) > 2bar(29磅/平方英寸)
使用温度范围 82摄氏度 82摄氏度 82摄氏度 200摄氏度 200摄氏度 82摄氏度 82摄氏度 <120°C <180°摄氏度